570 resultados para Cultivar Marandu


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Compaction is an important problem in soils under pastoral land use, and can make livestock systems unsustainable. The objective of this research was to study the impact of soil compaction on yield and quality of palisade (UROCHLOA BRIZANTHA cv. Marandu). The experiment was conducted on an Oxisol in the State of Mato Grosso, Brazil. Treatments consisted of four levels of soil compaction: no compaction (NC), slight compaction (SC), medium compaction (MC) and high compaction (HC). The following soil properties were evaluated (layers 0-0.05 and 0.05-0.10 m): aggregate size distribution, bulk density (BD), macroporosity, microporosity, total porosity (TP), relative compaction (RC), and the characteristics of crude protein (CP), neutral detergent fiber (NDF), acid detergent fiber (ADF) and dry matter yield (DMY) of the forage. Highly compacted soil had high BD and RC, and low TP (0-0.05 m). Both DMY and CP were affected by HC, and both were strongly related to BD. Higher DMY (6.96 Mg ha-1) and CP (7.8 %) were observed in the MC treatment (BD 1.57 Mg m-3 and RC 0.91 Mg m-3, in 0-0.05 m). A high BD of 1.57 Mg m-3 (0-0.05 m) did not inhibit plant growth. The N concentration in the palisade biomass differed significantly among compaction treatments, and was 8.72, 11.20, 12.48 and 10.98 g kg-1 in NC, SC, MC and HC treatments, respectively. Increase in DMY and CP at the MC level may be attributed to more absorption of N in this coarse-textured soil.

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Sugarcane is considered a Si-accumulating plant, but in Brazil, where several soil types are used for cultivation, there is little information about silicon (Si) fertilization. The objectives of this study were to evaluate the silicon availability, uptake and recovery index of Si from the applied silicate on tropical soils with and without silicate fertilization, in three crops. The experiments in pots (100 L) were performed with specific Si rates (0, 185, 370 and 555 kg ha-1 Si), three soils (Quartzipsamment-Q, 6 % clay; Rhodic Hapludox-RH, 22 % clay; and Rhodic Acrudox-RA, 68 % clay), with four replications. The silicon source was Ca-Mg silicate. The same Ca and Mg quantities were applied to all pots, with lime and/or MgCl2, when necessary. Sugarcane was harvested in the plant cane and first- and second-ratoon crops. The silicon rates increased soil Si availability and Si uptake by sugarcane and had a strong residual effect. The contents of soluble Si were reduced by harvesting and increased with silicate application in the following decreasing order: Q>RH>RA. The silicate rates promoted an increase in soluble Si-acetic acid at harvest for all crops and in all soils, except RA. The amounts of Si-CaCl2 were not influenced by silicate in the ratoon crops. The plant Si uptake increased according to the Si rates and was highest in RA at all harvests. The recovery index of applied Si (RI) of sugarcane increased over time, and was highest in RA.

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Establishment of the water layer in an irrigated rice crop leads to consumption of free oxygen in the soil which enters in a chemical reduction process mediated by anaerobic microorganisms, changing the crop environment. To maintain optimal growth in an environment without O2, rice plants develop pore spaces (aerenchyma) that allow O2 transport from air to the roots. Carrying capacity is determined by the rice genome and it may vary among cultivars. Plants that have higher capacity for formation of aerenchyma should theoretically carry more O2 to the roots. However, part of the O2 that reaches the roots is lost due to permeability of the roots and the O2 gradient created between the soil and roots. The O2 that is lost to the outside medium can react with chemically reduced elements present in the soil; one of them is iron, which reacts with oxygen and forms an iron plaque on the outer root surface. Therefore, evaluation of the iron plaque and of the formation of pore spaces on the root can serve as a parameter to differentiate rice cultivars in regard to the volume of O2 transported via aerenchyma. An experiment was thus carried out in a greenhouse with the aim of comparing aerenchyma and iron plaque formation in 13 rice cultivars grown in flooded soils to their formation under growing conditions similar to a normal field, without free oxygen. The results indicated significant differences in the volume of pore spaces in the roots among cultivars and along the root segment in each cultivar, indicating that under flooded conditions the genetic potential of the plant is crucial in induction of cell death and formation of aerenchyma in response to lack of O2. In addition, the amount of Fe accumulated on the root surface was different among genotypes and along the roots. Thus, we concluded that the rice genotypes exhibit different responses for aerenchyma formation, oxygen release by the roots and iron plaque formation, and that there is a direct relationship between porosity and the amount of iron oxidized on the root surface.

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In the south-central region of Brazil, there is a trend toward reducing the sugarcane inter-harvest period and increasing traffic of heavy harvesting machinery on soil with high water content, which may intensify the compaction process. In this study, we assessed the structural changes of a distroferric Red Latosol (Oxisol) by monitoring soil water content as a function of the Least Limiting Water Range (LLWR) and quantified its effects on the crop yield and industrial quality of the first ratoon crop of sugarcane cultivars with different maturation cycles. Three cultivars (RB 83-5054, RB 84-5210 and RB 86-7515) were subjected to four levels of soil compaction brought about by a differing number of passes of a farm tractor (T0 = soil not trafficked, T2 = 2 passes, T10 = 10 passes, and T20 = 20 passes of the tractor in the same place) in a 3 × 4 factorial arrangement with three replications. The deleterious effects on the soil structure from the farm machinery traffic were limited to the surface layer (0-10 cm) of the inter-row area of the ratoon crop. The LLWR dropped to nearly zero after 20 tractor passes between the cane rows. We detected differences among the cultivars studied; cultivar RB 86-7515 stood out for its industrial processing quality, regardless of the level of soil compaction. Monitoring of soil moisture in the crop showed exposure to water stress conditions, although soil compaction did not affect the production variables of the sugarcane cultivars. We thus conclude that the absence of traffic on the plant row maintained suitable soil conditions for plant development and may have offset the harmful effects of soil compaction shown by the high values for bulk density between the rows of the sugarcane cultivars.

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Nitrogen is required in large amounts by plants and their dinamics in corn and perennial forages intercropped is little known. This study analyzed the efficiency of nitrogen fertilization (15NH4NO3) applied after corn grain harvest to palisadegrass (Brachiaria brizantha cv. Marandu) in intercrops sown at two times, as well as the N residual effect on the subsequent corn crop. The field experiment was performed in Botucatu, São Paulo State, in southeastern Brazil, on a structured Alfisol under no-tillage. The experiment was arranged in a randomized block design in a split plot scheme with four replications. The main plots consisted of two intercropping systems (corn and palisadegrass sown together and palisadegrass sown later, at corn top-dressing fertilization). The subplots consisted of four N rates (0, 30, 60, and 120 kg ha-1 N). The subplots contained microplots, in which enriched ammonium nitrate (15NH4NO3) was applied at the same rates. The time of intercrop sowing affected forage dry matter production, the amount of fertilizer-derived N in and the N use efficiency by the forage plants. Nitrogen applied in autumn to palisadegrass intercropped with corn, planted either at corn sowing or at N top-dressing fertilization, increased the forage yield up to a rate of 60 kg ha-1. The amount of fertilizer-derived N by the forage plants and the fertilizer use efficiency by palisadegrass were highest 160 days after fertilization for both intercrop sowing times, regardless of N rates. Residual N did not affect the N nutrition of corn plants grown in succession to palisadegrass, but increased grain yield at rates of 60 and 120 kg ha-1 N, when corn was grown on palisadegrass straw from the intercrop installed at corn fertilization (top-dressing). Our results indicated that the earlier intercropping allowed higher forage dry matter production. On the other hand, the later intercrop allowed a higher corn grain yield in succession to N-fertilized palisadegrass.

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Agricultural production systems that include the production of mulch for no-tillage farming and structural improvement of the soil can be considered key measures for agricultural activity in the Cerrado region without causing environmental degradation. In this respect, our work aimed to evaluate the chemical and physical-hydric properties of a dystrophic Red Latosol (Oxisol) in the municipality of Rio Verde, Goias, Brazil, under different soil management systems in the between-crop season of soybean cultivation five years after first planting. The following conditions were evaluated: Brachiaria brizantha cv. Marandu as a cover crop during the between-crop season; Second crop of maize intercropped with Brachiaria ruziziensis; Second crop of grain alone in a no-tillage system; Fallow soil after the soybean harvest; and Forest (natural vegetation) located in an adjacent area. Soil samples up to a depth of 40 cm were taken and used in the assessment of chemical properties and soil structure diagnostics. The results demonstrated that the conversion of native vegetation areas into agricultural fields altered the chemical and physical-hydric properties of the soil at all the depths evaluated, especially up to 10 cm, due to the activity of root systems in the soil structure. Cultivation of B. brizantha as a cover crop during the summer between-crop season increased soil water availability, which is important for agricultural activities in the region under study.

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A cultura da mandioca geralmente é exposta a mais de um período de deficiência hídrica durante a estação de crescimento. O objetivo deste trabalho foi verificar se há diferença na Fração de Água Transpirável do Solo (FATS) crítica para transpiração e crescimento foliar em plantas de mandioca submetidas a um e dois períodos de deficiência hídrica no solo. Foram conduzidos dois experimentos com a cultura da mandioca, cultivar Fepagro RS 13. Os tratamentos foram quatro regimes hídricos subdivididos em dois períodos, período 1 (P1) e período 2 (P2): regimes hídricos RH1 e RH2 (sem e com deficiência hídrica nos dois períodos, respectivamente) e regimes hídricos RH3 e RH4 (com deficiência hídrica no P1 e P2, respectivamente). Usou-se o método da FATS para indicar os pontos críticos para transpiração e crescimento foliar. A FATS crítica foi 0,35, 0,38 e 0,37 para crescimento foliar e 0,28; 0,26; e 0,28 para transpiração no P1 do RH2 e RH3 e P2 do RH4, respectivamente. No P2 do RH2, a FATS crítica para crescimento foliar e transpiração foi 0,09 e 0,13, respectivamente. Concluiu-se que há diminuição na FATS crítica em mandioca no segundo período comparado ao primeiro período de deficiência hídrica no solo, que pode ser explicada pela menor área foliar, o que permitiu que o período de turgescência das folhas fosse maior e, com isso, demoraram mais a ativar seus mecanismos de controle estomático. A implicação prática desses resultados é que esses podem ser utilizados como parâmetros para irrigação da cultura, e também, na seleção de cultivares mais tolerantes à deficiência hídrica.

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Em regiões de clima tropical ocorre rápida decomposição do material vegetal depositado sobre o solo, sendo a capacidade de reciclar nutrientes pela decomposição da palhada um dos aspectos mais importantes das plantas de cobertura. Objetivou-se avaliar a produtividade e a liberação de nutrientes de forrageiras consorciadas com milho para ensilagem, sucedido pela cultura da soja. Em área da Universidade Estadual Paulista, campus de Ilha Solteira, o experimento consistiu do consórcio de milho com quatro forrageiras: Urochloa brizantha cv. Marandu, Urochloa ruziziensis, Panicum maximum cv. Tanzânia e Panicum maximum cv. Áries, semeadas de três formas: na linha de semeadura do milho, misturada ao adubo; a lanço no mesmo dia da semeadura do milho; e a lanço no estádio V4 do milho, em delineamento de blocos casualizados com esquema fatorial 4 × 3 e quatro repetições. A avaliação da liberação de nutrientes foi realizada durante o cultivo da soja em sucessão aos consórcios pelo método do litter bag, aos 30, 60, 90 e 120 após a semeadura da soja. Panicum maximum cv. Tanzânia apresentou maior produtividade de matéria seca quando semeada a lanço por ocasião da semeadura do milho. A semeadura das forrageiras na linha do milho e a lanço simultaneamente ao milho proporcionaram maior produtividade de matéria seca para formação de palhada. O consórcio da cultura do milho com forrageiras no outono é alternativa para elevar a quantidade de palhada e ciclagem de macronutrientes em sistema plantio direto. O K foi o nutriente que apresentou maior acúmulo na palhada das forrageiras (até 150 kg ha-1), com 100 % de liberação aos 90 dias após a semeadura da soja, sendo excelente alternativa de ciclagem desse nutriente. Panicum maximum cv. Tanzânia semeada a lanço simultaneamente ao milho se destacou na ciclagem de P (13 kg ha-1). Panicum maximum cv. Tanzânia distribuída a lanço no estádio V4 do milho é a opção com menor potencial para produção de palhada e ciclagem de nutrientes, enquanto as demais opções (forrageiras e modalidades de semeadura) têm maior potencial de utilização, ficando a critério da disponibilidade dos maquinários para implantação do consórcio com a cultura do milho.

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A oliveira é uma planta de clima temperado, cuja frutificação necessita de baixas temperaturas no período que antecede a floração. A produção de mudas de boa qualidade dessa cultura é fundamental na implantação do pomar e uma associação com fungos micorrízicos arbusculares (FMAs) pode ser muito importante nesse sentido. No Brasil, não há estudos relacionados à utilização de FMAs na produção de mudas de oliveira. O objetivo deste estudo foi avaliar o efeito da utilização de diferentes espécies de FMAs no desenvolvimento de mudas de cultivares de oliveira com potencial de cultivo na região sul de Minas Gerais. O experimento foi realizado em casa de vegetação avaliando-se três cultivares de oliveira (Arbequina, Grappolo 541- MGS GRAP541 e Maria da Fé - MGS MARIENSE) e quatro tratamentos de inoculação com FMAs (sem inóculo e com inóculo das espécies de FMAs Glomus clarum, Gigaspora rosea ou Acaulospora scrobiculata), de acordo com o fatorial (3 × 4). O delineamento experimental foi inteiramente casualizado, com três repetições. Os FMAs estudados proporcionaram maior massa de matéria seca da parte aérea e raiz das mudas, quando comparadas àquelas não inoculadas, principalmente para a Grappolo 541 (MGS GRAP 541) e Arbequina. A cultivar Maria da Fé (MGS MARIENSE) apresentou baixa dependência micorrízica e menor produção de matéria seca da parte aérea, comparada às outras cultivares.

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O feijoeiro comum (Phaseolus vulgaris L.) pode se beneficiar da fixação biológica de N2, mas respostas inconsistentes da cultura à inoculação com rizóbio indicam a necessidade de aplicação de N mineral complementar. Este trabalho teve por objetivo avaliar a resposta do feijoeiro à inoculação com rizóbio, associada à suplementação com N mineral, nos biomas Cerrado e Mata Atlântica. Foram conduzidos quatro experimentos de campo, dois em Santo Antônio de Goiás, GO, um em Valença, RJ e um em Macaé, RJ, onde a inoculação com estirpes comerciais de rizóbio foi comparada à inoculação com a estirpe BR 923 de Sinorhizobium sp., à adubação com N mineral e à suplementação com N na semeadura e em cobertura. A avaliação da população nativa de rizóbio indicou 105 células g-1 no solo na área experimental em Goiás, anteriormente cultivada com feijão, e 102células g-1 em Valença, anteriormente mantida com pastagem. Nos dois experimentos em Goiás, o rendimento de grãos, da ordem de 2.100 kg ha-1, não diferiu entre os tratamentos testemunha absoluta, inoculação com rizóbio ou aplicação de 120 kg ha-1 de N. Em Valença, a inoculação com estirpes comerciais forneceu rendimentos da cultivar Ouro Negro superiores à testemunha absoluta, na ausência de adubação de cobertura; na presença de 40 kg ha-1 de N em cobertura, a inoculação com rizóbio proporcionou rendimento de 3.420 kg ha-1, superior aos demais tratamentos. Na média das diferentes fontes de N na semeadura, a adubação de cobertura aumentou a produção de grãos de 2.367 para 2.542 kg ha-1. Em Macaé, em solo com alto teor de matéria orgânica, os maiores rendimentos foram obtidos com inoculação das estirpes comerciais associada a 40 kg ha-1 de N em cobertura, com efeito deletério da adubação de 80 kg ha-1 de N no plantio. Concluiu-se que em áreas sem cultivo prévio de feijão, a inoculação com estirpes comerciais de rizóbio aumentou o rendimento de grãos, em particular quando associada à adubação de cobertura com N.

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ABSTRACT High contents of plant-available selenium in the soil in the form of selenate, resulting from natural or anthropogenic action, jeopardizes agricultural areas and requires research for solutions to establish or re-establish agricultural or livestock operation, avoiding the risk of poisoning of plants, animals and humans. The purpose was to evaluate sulfur sources in the form of sulfate, e.g., ammonium sulfate, calcium sulfate, ferric sulfate, in the remediation of tropical soils anthropogenically contaminated with Se under the tropical forage grass Brachiaria brizantha (Hochst. ex A. Rich.) Stapf cv. Marandu. More clayey soils are less able to supply plants with Se, which influences the effects of S sources, but it was found that high soil Se concentrations negatively affected forage biomass production, regardless of the soil. Of the tested S sources, the highly soluble ammonium sulfate and ferric sulfate reduced plant Se uptake and raised the available sulfur content in the soil.

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ABSTRACT Univariate methods for diagnosing nutritional status such as the sufficiency range and the critical level for garlic crops are very susceptible to the effects of dilution and accumulation of nutrients. Therefore, this study aimed to establish bivariate and multivariate norms for this crop using the Diagnosis and Recommendation Integrated System (DRIS) and Nutritional Composition Diagnosis (CND), respectively. The criteria used were nutritional status and the sufficiency range, and then the diagnoses were compared. The study was performed in the region of Alto Paranaíba, MG, Brazil, during the crop seasons 2012 and 2013. Samples comprised 99 commercial fields of garlic, cultivated with the cultivar “Ito” and mostly established in Latossolo Vermelho-Amarelo Distrófico (Oxisol). Copper and K were the nutrients with the highest number of fields diagnosed as limiting by lack (LF) and limiting by excess (LE), respectively. The DRIS method presented greater tendency to diagnose LF, while the CND tended towards LE. The sufficiency range of both methods presented narrow ranges in relation to those suggested by the literature. Moreover, all ranges produced by the CND method provided narrower ranges than the DRIS method. The CND method showed better performance than DRIS in distinguishing crop yield covered by different diagnoses. Turning to the criterion of evaluation, the study found that nutritional status gave a better performance than sufficiency range in terms of distinguishing diagnoses regarding yield.

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ABSTRACT The cultivation of cover crops intercropped with fruit trees is an alternative to maintain mulch cover between plant rows and increase soil organic carbon (C) stocks. The objective of this study was to evaluate changes in soil total organic C content and labile organic matter fractions in response to cover crop cultivation in an orange orchard. The experiment was performed in the state of Bahia, in a citrus orchard with cultivar ‘Pera’ orange (Citrus sinensis) at a spacing of 6 × 4 m. A randomized complete block design with three replications was used. The following species were used as cover crops: Brachiaria (Brachiaria decumbes) – BRAQ, pearl millet (Pennisetum glaucum) – MIL, jack bean (Canavalia ensiformis) – JB, blend (50 % each) of jack bean + millet (JB/MIL), and spontaneous vegetation (SPV). The cover crops were broadcast-seeded between the rows of orange trees and mechanically mowed after flowering. Soil sampling at depths of 0.00-0.10, 0.10-0.20, and 0.20-0.40 m was performed in small soil trenches. The total soil organic C (SOC) content, light fraction (LF), and the particulate organic C (POC), and oxidizable organic C fractions were estimated. Total soil organic C content was not significantly changed by the cover crops, indicating low sensitivity in reacting to recent changes in soil organic matter due to management practices. Grasses enabled a greater accumulation of SOC stocks in 0.00-0.40 m compared to all other treatments. Jack bean cultivation increased LF and the most labile oxidizable organic C fraction (F1) in the soil surface and the deepest layer tested. Cover crop cultivation increased labile C in the 0.00-0.10 m layer, which can enhance soil microbial activity and nutrient absorption by the citrus trees. The fractions LF and F1 may be suitable indicators for monitoring changes in soil organic matter content due to changes in soil management practices.

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Este trabalho foi conduzido para avaliar o efeito da germinação sobre os constituintes antinutricionais da soja, ácido fítico, P total e inibidores de tripsina, que interferem na utilização de proteínas e outras substâncias. A diminuição no aproveitamento de nutrientes resulta em inibição de crescimento, hipoglicemia ou danos a tecidos animais. Para os ensaios foram utilizadas as cultivares de soja (Glycine max (L.) Merrill ) BR-13 e Paraná. As sementes foram incubadas em câmara de germinação a 25°C e 100% de umidade, de 0 a 72 horas, com coleta de amostras em intervalos eqüidistantes de seis horas. A cultivar Paraná apresentou teores superiores de ácido fítico, P total e inibidores de tripsina, em relação à cultivar BR-13. As análises de variância e comparações entre médias indicaram que houve aumentos significativos (p < 0,05) nos teores de P total (8,5% e 3,6% nas cultivares BR-13 e Paraná, respectivamente) e nos níveis de inibidores de tripsina (22,05% e 17,10% nas cultivares BR-13 e Paraná, respectivamente), e reduções nos teores de ácido fítico (15,96% e 9,46% nas cultivares BR-13 e Paraná, respectivamente), em 72 horas de germinação.

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Brotações de macieira (Malus domestica, Borkh), cv. Fred Hough, oriundas do processo de multiplicação in vitro, foram inoculadas em meio MS e MS/2, testando-se os reguladores de crescimento: ácido indol-3-acético (AIA); ácido indolbutírico (AIB) e ácido naftaleno acético (ANA), nas concentrações de 0, 1, 3 e 5 miM com o objetivo de observar o efeito dessas auxinas sobre o enraizamento da cultivar. Foram acrescentadas aos meios as vitaminas MS mio-inositol (100 mg/L) e sacarose (30 g/L) em meio de ágar (6 g/L). O pH do meio foi ajustado para 5,8 e a cultura foi incubada a 25 ± 2º C e 16 horas de fotoperíodo a 2.000 lux, permanecendo por 30 dias. Os tratamentos foram repetidos cinco vezes e cada repetição constou de cinco explantes inoculados em frasco de 250 mL contendo 40 mL do meio. O meio MS/2 em todas as concentrações testadas foi melhor que o MS. O ANA e o AIB, ambos na concentração de 3 miM, em meio MS/2, tiveram comportamento semelhante na porcentagem de enraizamento e no número de raízes produzidas; no entanto, o ANA provocou efeitos indesejáveis na qualidade destas, havendo formação de calo na base das brotações e raízes grossas. O AIA obteve melhor resposta nas altas concentrações, mas não foi melhor que o AIB e ANA.